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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Impact of Heterogeneity on Gamma-Spectrometry Data at Nondestructive Assay of Radioactive Waste
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Impact of Heterogeneity on Gamma-Spectrometry Data at Nondestructive Assay of Radioactive Waste

机译:放射性废物非破坏性分析中异构性对γ能谱数据的影响

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摘要

The uncertainty of the direct gamma-spectrometry method at a nondestructive assay of radioactive wastes is considered by taking into account the heterogeneity (over the container's volume) of the activity and of the gamma-attenuation factor distributions. Since it is impossible to obtain in a real assay the estimations of the uncertainty in individual cases, the "maximal uncertainty" approach to characterize the method is introduced in this study. It is shown that the relative maximal uncertainty of the assay is comparatively small in a rather wide range of container's volume values (at least for bulk volumes up to 5-8 m~3 this uncertainty does not exceed 200-400%). That uncertainty, owing to the heterogeneity of activity, gives a main contribution in the total value. Nonuniformity of the attenuation factor (i.e., waste matrix's density and/or effective atomic number heterogeneity) gives a comparatively less contribution to the total uncertainty, the average value of measured gamma flux turns out to be positively shifted relating to the flux value for the homogeneous waste matrix, and leads to overestimating of the activity value at the assay of heterogeneous wastes.
机译:通过考虑放射性活度和伽马衰减因子分布的异质性(在容器体积上),可以考虑在放射性废物的非破坏性分析中直接伽马光谱法的不确定性。由于不可能在真实的分析中获得个别情况下不确定性的估计,因此在本研究中引入了“最大不确定性”方法来表征该方法。结果表明,在相当大的容器体积值范围内,测定的相对最大不确定度相对较小(至少对于体积最大为5-8 m〜3的不确定度,不超过200-400%)。由于活动的多样性,这种不确定性为总价值做出了主要贡献。衰减因子的不均匀性(即废物基质的密度和/或有效原子序数的不均匀性)对总不确定度的贡献相对较小,测得的伽马通量的平均值相对于均质的通量值正向偏移废物矩阵,并导致在异质废物分析中高估活性值。

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